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13篇 您的检索式:作者名="Yihong Yao"
    题名 作者 年代 出处 被引量
1Targeting interleukin-6 in inflammatory autoimmune diseases and cancers显示文摘Xin Yao Jiaqi Huang Haihong Zhong Nan Shen Raffaella Faggioni Michael Fung Yihong Yao 2014Pharmacology and Therapeutics2014,,2:2
2Steam gasifi-cation of coal char catalyzed by K2CO3 for enhanced produc-tion of hydrogen without formation of methane显示文摘Wang Jie Jiang Mingquan Yao Yihong 2009Fuel2009,88,9:1
3EnhancedCatalysis of K2CO3 for Steam Gasification of Coal Charby Using Ca(OH)2 in Char Preparation显示文摘WANG Jie YAO Yihong CAO Jianqin 2010Fuel2010,89,2:1
4SteamGasification of Coal Char Catalyzed by K2CO3 for En-hanced Production of Hydrogen Without Formation ofMethane显示文摘WANG Jie JIANG Mingquan YAO Yihong 2009Fuel2009,88,9:1
5Steam Gasification of Coal Char Catalyzed by K2CO3 for Enhanced Production of Hydrogen Without Formation of Methane显示文摘Wang Jie Jiang Mingquan Yao Yihong 2009Fuel2009,88,9:1
6Micro RNA ‐206 induces G 1 arrest in melanoma by inhibition of CDK 4 and C yclin D显示文摘Robert W. Georgantas Katie Streicher Xiaobing Luo Lydia Greenlees Wei Zhu Zheng Liu Philip Brohawn Christopher Morehouse Brandon W. Higgs Laura Richman Bahija Jallal Yihong Yao Koustubh Ranade 2014Pigment Cell Melanoma Res2014,,2:1
7Steam gasification of coal char catalysted by K2CO3 for enhanced production of hydrogen without formation methane显示文摘Wang Jie Jiang Mingquan Yao Yihong 2009Fuel2009,88,9:1
8Enhanced catalysis of K 2 CO 3 for steam gasification of coal char by using Ca(OH) 2 in char preparation显示文摘Jie Wang Yihong Yao Jianqin Cao Mingquan Jiang 2009Fuel2009,,2:1
9Enhanced Ca- talysis of K2CO3 for Steam Gasification of Coal Char by Using Ca(OH)2 in Char Preparation 显示文摘Wang Jie Yao Yihong Cao Jianqin 2010Fuel2010,89,2:1
10Steam Gasification of Coal Char Catalyzed by K2CO3 for Enhanced Production of Hydrogen Without Fomation of Methane显示文摘Wang Jie Jiang Mingquan Yao Yihong 2009Fuel2009,88,9:1
11Steam gasification of coal char catalyzed by K2CO3 for enhanced production of hydrogen without formationofmethane 显示文摘WANG Jie JIANG Mingquan YAO Yihong 2009Fuel2009,,88:1
12Giant low-field magnetocaloric effect in ferromagnetically ordered Er_(1-x)Tm_(x)Al_(2)(0≤x≤1)compounds显示文摘Magnetocaloric material is the key working substance for magnetic refrigerant technology,for which the low-field and low-temperature magnetocaloric effect(MCE)performance is of great importance for practical applications at low temperatures.Here,a giant low-field magnetocaloric effect in ferromagnetically ordered Er_(1-x)Tm_(x)Al_(2)(0≤x≤1)compounds was reported,and the magnetic structure was characterized based on low-temperature neutron powder diffraction.With increasing Tm content from 0 to 1,the Curie temperature of Er_(1-x)Tm_(x)Al_(2)(0≤x≤1)compounds decreases from 16.0 K to 3.6 K.For Er_(0.7)Tm_(0.3)Al_(2) compound,it showed the largest low-field magnetic entropy change(–SM)with the peak value of 17.2 and 25.7 J/(kg K)for 0–1 T and 0–2 T,respectively.The(–SM)max up to 17.2 J/(kg K)of Er0.7Tm0.3Al2 compound for 0–1 T is the largest among the intermetallic magnetocaloric materials ever reported at temperatures below 20 K.The peak value of adiabatic temperature change(Tad)max was determined as 4.13 K and 6.87 K for 0–1 T and 0–2 T,respectively.The characteristic of second-order magnetic transitions was confirmed on basis of Arrott plots,the quantitative criterion of exponent n,rescaled universal curves,and the mean-field theory criterion.The outstanding low-field MCE performance with low working temperatures indicates that Er_(1-x)Tm_(x)Al_(2)(0≤x≤1)compounds are promising candidates for magnetic cooling materials at liquid hydrogen and liquid helium temperatures.Shuxian Yang Xinqi Zheng Dingsong Wang Juping Xu Wen Yin Lei Xi Chaofan Liu Jun Liu Jiawang Xu Hu Zhang Zhiyi Xu Lichen Wang Yihong Yao Maosen Zhang Yichi Zhang Jianxin Shen Shouguo Wang Baogen Shen 2023Journal of Materials Science & Technology2023,,15:0
13Study of a damage constitutive model for water-bearing coal measures sedimentary rock with nonlinear deformation during compaction stage显示文摘The problem of repeated immersion-induced fatigue damage in engineering coal measures sedimentary rock,including coal-rock pillars,reservoir bank slopes,and water-rich tunnels at the boundary of coal mine underground reservoirs,has profound implications for their stability,safety,and operation,and can even lead to geological disasters.To address this issue,this paper aims to construct a constitutive model that accurately captures the comprehensive process of deformation and failure in water-bearing coal measures sedimentary rock.It explores the deformation characteristics of these formations and provides a theoretical foundation for numerical simulations of geological disasters induced by water-rock interaction.This study integrates the deformation mechanisms of void and matrix deformation in coal seam sedimentary rocks,while considering the influence of immersion cycles.Subsequently,it formulates a segmented constitutive model to depict the entire process of deformation and failure in cyclically immersed water-bearing coal measures sedimentary rock under uniaxial compression.The proposed model's accuracy and rationality are validated through comparisons with experimental research findings and existing theoretical curves from similar models.The results demonstrate the model's effectiveness in describing the deformation behavior of non-dense water-bearing coal measures sedimentary rock under uniaxial compression or low confining pressure before reaching peak stress,although further refinements may be necessary to precisely capture post-peak deformation characteristics.Model parameters,including the deformation caused by voids(γ0)between voids,increase exponentially with immersion times,while the elastic modulus(Ev)of voids and the parameter(F0)related to the average strength of microelements decrease exponentially.The homogeneity degree(m)exhibits no discernible pattern.These research outcomes provide valuable insights for the stability control of engineering coal measures sedimentary rock under water-rock interaction and the mitigation of related geological disasters.Weinan Wang Qiangling Yao Aiwen Wang Karen A.Hudson-Edwards Chuangkai Zheng Lun Yan Lianpeng Dai Yihong Liu 2023Geohazard Mechanics2023,1,3:0
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